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Low-voltage 2D materials-based printed field-effect transistors for integrated digital and analog electronics on paper

机译:基于低压2D材料的印刷场效应晶体管,用于纸上集成数字和模拟电子产品

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Paper is the ideal substrate for the development of flexible and environmentally sustainable ubiquitous electronic systems, which, combined with two-dimensional materials, could be exploited in many Internet-of-Things applications, ranging from wearable electronics to smart packaging. Here we report high-performance MoS 2 field-effect transistors on paper fabricated with a "channel array" approach, combining the advantages of two large-area techniques: chemical vapor deposition and inkjet-printing. The first allows the pre-deposition of a pattern of MoS 2 ; the second, the printing of dielectric layers, contacts, and connections to complete transistors and circuits fabrication. Average I ON /I OFF of 8 × 10 3 (up to 5 × 10 4 ) and mobility of 5.5 cm 2 V -1 s -1 (up to 26 cm 2 V -1 s -1 ) are obtained. Fully functional integrated circuits of digital and analog building blocks, such as logic gates and current mirrors, are demonstrated, highlighting the potential of this approach for ubiquitous electronics on paper.
机译:纸张是用于开发柔性和环境可持续的无处不在的电子系统的理想基板,这些电子系统与二维材料相结合,可以在许多内互联网应用中进行利用,从可穿戴电子设备到智能包装。在这里,我们在用“通道阵列”方法制造的纸上报告了高性能MOS 2场效应晶体管,相结合了两个大面积技术的优点:化学气相沉积和喷墨印刷。首先允许MOS 2的图案预沉积;第二,印刷介电层,触点和连接到完全晶体管和电路制造。获得8×10 3(最多5×10 4)的平均I ON / I OFF和5.5cm 2 V -1 S -1的迁移率(高达26cm 2 V-1 s -1)。展示了数字和模拟构建块的全功能集成电路,如逻辑门和电流镜,突出了这种纸上无处不在的电子产品的潜力。

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